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Single-stage cell-based cartilage repair in a rabbit model: cell tracking and in vivo chondrogenesis of human umbilical cord blood-derived mesenchymal.

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Presentation on theme: "Single-stage cell-based cartilage repair in a rabbit model: cell tracking and in vivo chondrogenesis of human umbilical cord blood-derived mesenchymal."— Presentation transcript:

1 Single-stage cell-based cartilage repair in a rabbit model: cell tracking and in vivo chondrogenesis of human umbilical cord blood-derived mesenchymal stem cells and hyaluronic acid hydrogel composite  Y.B. Park, C.W. Ha, J.A. Kim, W.J. Han, J.H. Rhim, H.J. Lee, K.J. Kim, Y.G. Park, J.Y. Chung  Osteoarthritis and Cartilage  Volume 25, Issue 4, Pages (April 2017) DOI: /j.joca Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

2 Fig. 1 Gross appearance and assessment results of articular cartilage defects in a rabbit model at 8 and 16 weeks post-transplantation. (A): Experimental knees with hUCB-MSCs + HA, control knees with HA only, defect only, and normal knee without defect at 8 weeks. (B): Experimental knees with hUCB-MSCs + HA, control knees with HA only, defect only, and normal knee without defect at 16 weeks. (C): ICRS macroscopic cartilage repair assessment for hUCB-MSCs + HA, HA only, and defect only (10 knees/group). Error bars represent 95% confidence interval. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

3 Fig. 2 Microscopic findings of the repair tissue at articular cartilage defect sites in a rabbit (10 knees/group). (A): H & E staining at 8 weeks; ×12.5. Scale bars = 1 μm. (B): H & E staining at 16 weeks; ×12.5. Scale bars = 1 μm. (Ai, Bi): Higher magnification views of the areas boxed in (A, B) respectively; ×40. Scale bars = 200 μm. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

4 Fig. 3 Microscopic findings of the repair tissue at articular cartilage defect sites in a rabbit (10 knees/group). (A): Masson's trichrome stain at 8 weeks; ×12.5. Scale bars = 1 μm. (B): Masson's trichrome stain at 16 weeks; ×12.5. Scale bars = 1 μm. (Ai, Bi): Higher magnification views of the areas boxed in (A, B) respectively; ×40. Scale bars = 200 μm. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

5 Fig. 4 Microscopic findings of repair tissue at the articular cartilage defect sites in a rabbit (10 knees/group). (A): Type II collagen immunostaining at 8 weeks; ×12.5. Scale bars = 1 μm. (B): Type II collagen immunostaining at 16 weeks; ×12.5. Scale bars = 1 μm. (Ai, Bi): Higher magnification views of the areas boxed in (A, B) respectively; ×40. Scale bars = 200 μm. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

6 Fig. 5 Microscopic findings of repair tissue at the articular cartilage defect sites in a rabbit (10 knees/group). (A): Safranin-O staining at 8 weeks; ×12.5. Scale bars = 1 μm. (B): Safranin-O staining at 16 weeks; ×12.5. Scale bars = 1 μm. (Ai, Bi): Higher magnification views of the areas boxed in (A, B) respectively; ×40. Scale bars = 200 μm. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

7 Fig. 6 Microscopic findings of repair tissue at the articular cartilage defect sites in a rabbit (10 knees/group). (A): Sirius Red staining at 8 weeks; ×40. Scale bars = 200 μm. (B): Sirius Red staining at 16 weeks; ×40. Scale bars = 200 μm. (Ai, Bi): Higher magnification views of the areas boxed in (A, B) respectively; ×100. Scale bars = 100 μm. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

8 Fig. 7 Semiquantitative analysis of repair tissue at the articular cartilage defect sites in rabbit knee at 8 and 16 weeks (10 knees/group). Sections were histologically evaluated based on a modified O'Driscoll score). Error bars represent 95% confidence interval. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

9 Fig. 8 Cell tracking images using anti-human nuclear antibody staining at 2, 4, 8, and 16 weeks post-transplantation (10 knees/week). (A): 2 weeks. (B): 4 weeks. (C): 8 weeks. (D): 16 weeks; X Fit. Scale bars = 6 mm. (Ai, Bi, Ci, Di): Higher magnification views of the areas boxed in (A–D) respectively; ×4. Scale bars = 500 μm. (E): Quantification of human nuclei staining in cartilage sections. (F): As a negative control, human kidney tissues were incubated in mouse IgG instead of the mouse anti-human nuclei monoclonal antibody. (F): Positive controls were incubated with anti-human nuclei monoclonal antibody. Error bars represent 95% confidence interval. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions

10 Fig. 8 Cell tracking images using anti-human nuclear antibody staining at 2, 4, 8, and 16 weeks post-transplantation (10 knees/week). (A): 2 weeks. (B): 4 weeks. (C): 8 weeks. (D): 16 weeks; X Fit. Scale bars = 6 mm. (Ai, Bi, Ci, Di): Higher magnification views of the areas boxed in (A–D) respectively; ×4. Scale bars = 500 μm. (E): Quantification of human nuclei staining in cartilage sections. (F): As a negative control, human kidney tissues were incubated in mouse IgG instead of the mouse anti-human nuclei monoclonal antibody. (F): Positive controls were incubated with anti-human nuclei monoclonal antibody. Error bars represent 95% confidence interval. Osteoarthritis and Cartilage  , DOI: ( /j.joca ) Copyright © 2016 Osteoarthritis Research Society International Terms and Conditions


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